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Modeling of reinforced concrete structural members for engineering purposes

机译:用于工程目的的钢筋混凝土结构构件建模

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摘要

When approached using nonlinear finite element (FE) techniques, structural analyses generate, for real RC structures, large complex numerical problems. Damage is a major part of concrete behavior, and the discretization technique is critical to limiting the size of the problem. Based on previous work, the mu damage model has been designed to activate the various damage effects correlated with monotonic and cyclic loading, including unilateral effects. Assumptions are formulated to simplify constitutive relationships while still allowing for a correct description of the main nonlinear effects. After presenting classical 2D finite element applications on structural elements, an enhanced simplified FE description including a damage description and based on the use of multi-fiber beam elements is provided. Improvements to this description are introduced both to prevent dependency on mesh size as damage evolves and to take into account specific phenomena (permanent strains and damping, steel-concrete debonding). Applications on RC structures subjected to cyclic loads are discussed, and results lead to justifying the various concepts and assumptions explained.
机译:当使用非线性有限元(FE)技术进行处理时,结构分析会为实际的RC结构生成大的复杂数值问题。损害是具体行为的重要组成部分,而离散化技术对于限制问题的规模至关重要。根据先前的工作,设计了mu损伤模型来激活与单调和循环载荷相关的各种损伤效应,包括单方面效应。制定假设以简化本构关系,同时仍允许正确描述主要非线性效应。在将经典的2D有限元应用于结构元素之后,提供了增强的简化FE描述(包括损伤描述),并且基于多纤维梁元素的使用。引入了对该描述的改进,以防止随着损坏的发展而依赖于网格尺寸,并考虑到特定现象(永久应变和阻尼,钢混凝土剥离)。讨论了在承受周期性载荷的RC结构上的应用,其结果可证明所解释的各种概念和假设的合理性。

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